Music in Noise: Neural Correlates Underlying Noise Tolerance in Music-Induced Emotion.

Cerebral cortex communications Pub Date : 2021-10-13 eCollection Date: 2021-01-01 DOI:10.1093/texcom/tgab061
Shota Murai, Ae Na Yang, Shizuko Hiryu, Kohta I Kobayasi
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引用次数: 1

Abstract

Music can be experienced in various acoustic qualities. In this study, we investigated how the acoustic quality of the music can influence strong emotional experiences, such as musical chills, and the neural activity. The music's acoustic quality was controlled by adding noise to musical pieces. Participants listened to clear and noisy musical pieces and pressed a button when they experienced chills. We estimated neural activity in response to chills under both clear and noisy conditions using functional magnetic resonance imaging (fMRI). The behavioral data revealed that compared with the clear condition, the noisy condition dramatically decreased the number of chills and duration of chills. The fMRI results showed that under both noisy and clear conditions the supplementary motor area, insula, and superior temporal gyrus were similarly activated when participants experienced chills. The involvement of these brain regions may be crucial for music-induced emotional processes under the noisy as well as the clear condition. In addition, we found a decrease in the activation of the right superior temporal sulcus when experiencing chills under the noisy condition, which suggests that music-induced emotional processing is sensitive to acoustic quality.

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噪音中的音乐:音乐诱发情绪中潜在噪音耐受性的神经关联。
音乐可以通过不同的音质来体验。在这项研究中,我们调查了音乐的声学质量如何影响强烈的情感体验,如音乐寒颤和神经活动。音乐的音质是通过在乐曲中加入噪音来控制的。参与者听了清晰和嘈杂的音乐片段,当他们感到寒颤时按下按钮。我们使用功能磁共振成像(fMRI)估计了在清晰和嘈杂条件下神经活动对寒颤的反应。行为学数据显示,噪声条件下大鼠的颤振次数和颤振持续时间明显少于无噪声条件下大鼠。fMRI结果显示,在嘈杂和清晰的条件下,当参与者经历寒战时,辅助运动区、脑岛和颞上回都同样被激活。这些大脑区域的参与可能对嘈杂和清晰环境下音乐诱发的情绪过程至关重要。此外,我们发现在嘈杂的环境下,当经历寒颤时,右侧颞上沟的激活减少,这表明音乐诱导的情绪处理对声音质量敏感。
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